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A Sensor Signal Amplifier Resilient to EMI

机译:能够抵抗EMI的传感器信号放大器

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The rising level of electromagnetic pollution recorded in recent years represents a serious threat to the reliability of electronic devices and systems, which our life is plenty of. Besides corrupting nominal signals, electromagnetic interference (EMI) collected by interconnects can drive active nonlinear devices, which integrated circuits are made of, out of their nominal operating region and this usually results in distortion of the signals. The most harmful effect of such a process is the generation of the baseband intermodulation products, i.e., demodulated EMI that can be distinguished from nominal signals unlikely. This point is addressed in the first part of this paper where the expression of the offset induced by the radio frequency interference in MOS differential pair is derived then used to show the effect of EMI in feedback operational amplifiers. Some techniques to obtain higher immunity levels are also presented. The second part of this paper focuses on low-offset low-noise amplifiers of common use in sensor signal conditioning circuits that usually show high susceptibility to EMI. Aiming to address this issue, a new technique based on the dynamic cancelation of EMI-induced errors is presented, and evidences of its effectiveness are provided showing simulation and measurement results.
机译:近年来记录到的电磁污染水平的上升对电子设备和系统的可靠性构成了严重威胁,而电子设备和系统的可靠性是我们生活中很多的。除了破坏标称信号外,由互连收集的电磁干扰(EMI)可以驱动有源非线性器件,这些器件由集成电路构成,超出了其标称工作范围,通常会导致信号失真。这种处理过程最有害的影响是产生了基带互调产物,即解调的EMI,它不可能与标称信号区分开。这一点在本文的第一部分中得到了解决,在该部分中,导出了由MOS差分对中的射频干扰引起的偏移的表达式,然后将其用于显示EMI在反馈运算放大器中的作用。还介绍了一些获得更高免疫力的技术。本文的第二部分关注于传感器信号调理电路中常用的低失调低噪声放大器,这些电路通常对EMI表现出很高的敏感性。为了解决这个问题,提出了一种基于动态消除EMI引起的误差的新技术,并提供了其有效性的证据,显示了仿真和测量结果。

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